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首页> 外文期刊>Engineering Fracture Mechanics >Simple mechanics model and Hertzian ring crack initiation strength characteristics of silicon nitride ceramic ball subjected to thermal shock
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Simple mechanics model and Hertzian ring crack initiation strength characteristics of silicon nitride ceramic ball subjected to thermal shock

机译:氮化硅陶瓷球的简单力学模型和偏振环裂纹启动强度特性进行热冲击

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摘要

This study investigated the ring crack initiation strength characteristics of silicon nitride ceramic balls subjected to thermal shock. Sphere indentation tests were conducted on ceramic balls following water quenching and furnace cooling operations performed in air and vacuum. The ring crack radius was significantly smaller because of the very thin silicon oxide (SiO2) layer formed owing to heat treatment in air at high temperatures. In addition, the ring crack initiation load and Weibull shape parameter of water-quenched ceramic balls decreased with increasing temperature difference and remained relatively unaffected by the high-temperature oxidation. This phenomenon was mainly due to microscopic damage, which occurs near the surface of ceramic balls, caused by transient thermal stress developed during water quenching. A simple mechanics model based on the constant energy release rate criterion has been proposed for comparing experimental results obtained in this study against theoretical predictions, and results of the said comparison adequately verify strength characteristics of the aforementioned ceramic balls subjected to thermal shock.
机译:该研究研究了对热冲击的氮化硅陶瓷球的环形裂纹启动强度特性。在空气和真空中进行的水淬火和炉冷却操作后,在陶瓷球上进行球形凹凸测试。由于在高温下的空气中的空气中的热处理形成,环裂纹半径明显更小。另外,随着温度差异的增加,水猝灭陶瓷球的环形裂纹引发载荷和XWIBULL形状参数随着高温氧化而相对不受影响。这种现象主要是由于显微镜损伤,这在陶瓷球表面附近发生,由在水淬火过程中产生的瞬态热应力引起。已经提出了一种基于恒定能量释放速率标准的简单力学模型,用于比较本研究中获得的实验结果,反对理论预测,并且所述比较的结果充分验证了上述陶瓷球的强度特性进行了热休克。

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